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Vertical Grid Shifting Approach to the Development of Contrail Reduction Strategies with Sector Capacity Constraints

机译:垂直网格转移方法在具有部门能力约束的约束减少策略的发展中

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Many strategies have been proposed to reduce contrail formation in the United States airspace. One approach is to build three-dimensional weather grids and have aircraft cruising at different flight levels to avoid the persistent contrail potential area with the consideration to constraints like fuel burn, flight level capacity, and total operations of climbing/descending aircraft count at each level. However, there is no air traffic control regulation defining the flight level capacity and the total number of climbing/descending aircraft operations for each flight level. This paper presents a contrail reduction scheme, which considers the defined Monitor Alert Parameter value as the sector capacity constraint. Instead of shifting (changing cruise altitude among vertical grids) for all aircraft in a center, the new scheme only shifts certain aircraft out of those grids that are within the persistent contrail potential area. Compared with the level shifting scheme, the grid shifting has a finer resolution and brings the benefits of more contrail reduction and less fuel burn. Furthermore, the one-hour planning interval is changed to one-minute, which provides higher temporal resolution in solution results. Numerical experiments are performed to compare the new vertical grid shifting scheme with the previous level shifting scheme.
机译:已经提出了许多减少美国领空中轨迹转换形成的策略。一种方法是建立三维天气网格,并使飞机在不同的飞行级别上巡航,以避免持续的轨迹转换潜在区域,同时要考虑到诸如燃油消耗,飞行级别容量以及每个级别上的飞机上升/下降飞机总数等约束条件。但是,没有空中交通管制法规来定义飞行水平容量以及每个飞行水平的爬升/下降飞机操作总数。本文提出了一种降低污染的方案,该方案将定义的“监视器警报参数”值视为扇区容量约束。这项新计划并未将某个中心的所有飞机转移(在垂直网格之间更改巡航高度),而是仅将某些飞机从持久性轨迹转换潜在区域内的那些网格中转移出来。与电平转换方案相比,网格转换具有更好的分辨率,并带来了更多的降低轨迹转换和减少燃油消耗的好处。此外,将一小时的计划间隔更改为一分钟,从而在解决方案结果中提供了更高的时间分辨率。进行数值实验以将新的垂直网格移位方案与先前的水平移位方案进行比较。

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